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Design, Development, and Flight Evaluation of Pilot Displays and Long-Track Control for Wake Surfing Applications

机译:尾波冲浪应用的先导显示器和远距离控制的设计,开发和飞行评估

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From April to May 2017, the National Aeronautics and Space Administration Armstrong Flight Research Center completed a series of flights with a trail C-20A airplane surfing in the wake of a Gulfstream Ⅲ airplane using a commercially available datalink as the primary communication between the two aircraft. The purpose of this test was to characterize the aerodynamic benefits received by the trail airplane flying in the upwash portion of the wake generated from the lead airplane. Lateral and vertical relative position to the wake were automatically controlled through an experimental programmable autopilot on the C-20A airplane. Long-track, the separation distance between the two aircraft, was maintained by test pilots managing throttle position using customized cockpit displays. These displays provided the pilots with throttle cues for maintaining long-track position and situational awareness of the wake vortex relative to the position of the trail airplane. Flight testing demonstrated the ability of the pilots to use these displays to maintain a safe long-track distance, but found there to be trades between tracking performance and the frequency of throttle motion. The wake awareness display provided the pilots with adequate situational awareness of the wake vortex during the flight experiment. This paper presents a summary of the design, development, and flight evaluation of the pilot displays and long-track control.
机译:从2017年4月到2017年5月,美国国家航空航天局阿姆斯特朗飞行研究中心完成了一系列航班,在湾流Ⅲ飞机之后,使用商业上可获得的DataLink作为两架飞机之间的主要通信。该测试的目的是在引线飞机产生的叶片的瓶子上的拆除部分中的落后飞机飞行所接收的空气动力学益处。通过C-20A飞机上的实验可编程自动驾驶仪自动控制尾部的横向和垂直相对位置。长轨道,两架飞机之间的分离距离是通过使用定制驾驶舱显示的测试飞行员进行测试飞行员。这些显示器提供了具有节流线的导频,用于保持唤醒涡流的长轨道位置和局部意识相对于TRAIL飞机的位置。飞行测试表明了飞行员使用这些显示器来维持安全的长轨道距离,但在跟踪性能和节流运动频率之间存在交易。唤醒意识显示为飞行员提供了飞行员在飞行试验期间具有足够的危险涡旋意识。本文介绍了试验显示器和长轨控制的设计,开发和飞行评估摘要。

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